Lee Youngeun, Kim Kyeoung-Hwa, Yoon Hyemin, Lee Ok-Hee, Kim Eunyoung, Park Miseon, Jang Hoon, Hong Kwonho, Song Hyuk, Ko Jung Jae, Lee Woo Sik, Lee Kyung-Ah, Chang Eun Mi, Choi Youngsok
Department of Biomedical Science, CHA University, Seongnam-si, Gyeonggi-do, Republic of Korea.
Cell Physiol Biochem. 2016;40(6):1289-1302. doi: 10.1159/000453182. Epub 2016 Dec 19.
Ras dexamethasone-induced protein (RASD1) is a member of Ras superfamily of small GTPases. RASD1 regulates various signaling pathways involved in iron homeostasis, growth hormone secretion, and circadian rhythm. However, RASD1 function in oocyte remains unknown.
Using immunohistochemistry, immunofluorescence, and quantitative real-time RT-PCR, RASD1 expression in mouse ovary and RASD1 role in oocyte maturation-related gene expression, spindle formation, and chromosome alignment were analyzed. RNAi microinjection and time-lapse video microscopy were used to examine the effect of Rasd1 knockdown on oocyte maturation.
RASD1 was highly detected in oocytes transitioning from primordial to secondary follicles. Rasd1 was highly expressed in germinal vesicle (GV), during GV breakdown, and in metaphase I (MI) stage as oocytes mature, and its expression was significantly downregulated in MII stage. With knockdown of Rasd1, maturation in GV oocytes was arrested at MI stage, showing disrupted meiotic spindling and chromosomal misalignment. In addition, Obox4 and Arp2/3, engaged in MI-MII transition and cytokinesis, respectively, were misregulated in GV oocytes by Rasd1 knockdown.
These findings suggest that RASD1 is a novel factor in MI-MII oocyte transition and may be involved in regulating the progression of cytokinesis and spindle formation, controlling related signaling pathways during oocyte maturation.
Ras地塞米松诱导蛋白(RASD1)是小GTP酶Ras超家族的成员。RASD1调节参与铁稳态、生长激素分泌和昼夜节律的各种信号通路。然而,RASD1在卵母细胞中的功能仍不清楚。
采用免疫组织化学、免疫荧光和定量实时RT-PCR技术,分析RASD1在小鼠卵巢中的表达以及RASD1在卵母细胞成熟相关基因表达、纺锤体形成和染色体排列中的作用。采用RNAi显微注射和延时视频显微镜技术检测Rasd1基因敲低对卵母细胞成熟的影响。
在从原始卵泡向次级卵泡过渡的卵母细胞中高度检测到RASD1。随着卵母细胞成熟,Rasd1在生发泡(GV)、GV破裂期间和中期I(MI)阶段高度表达,而在MII阶段其表达显著下调。敲低Rasd1后,GV期卵母细胞的成熟停滞在MI期,表现为减数分裂纺锤体紊乱和染色体排列错误。此外,分别参与MI-MII转换和胞质分裂的Obox4和Arp2/3在GV期卵母细胞中因Rasd1基因敲低而失调。
这些发现表明,RASD1是MI-MII卵母细胞转换中的一个新因子,可能参与调节胞质分裂和纺锤体形成的进程,在卵母细胞成熟过程中控制相关信号通路。